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08/30/07 - USPTO Class 060 |  11 views | #20070199325 | Prev - Next | About this Page  060 rss/xml feed  monitor keywords

Combustor

USPTO Application #: 20070199325
Title: Combustor
Abstract: A sleeve 2e having the length of the side surface thereof made longer at a position away from the compressor outlet 11 is connected to the upstream-side end of an external cylinder 2c. By this sleeve 2e, compressed air flowing along the inside wall surface of a casing 4 flows, making a turn, in a space between the sleeve 2e and the inside wall surface of the casing 4, thereby providing the compressed air flow being introduced from the sleeve 2e to the external cylinder 2c with uniformity.
(end of abstract)
Agent: Westerman, Hattori, Daniels & Adrian, LLP - Washington, DC, US
Inventors: Satoshi Tanimura, Kenta Kurihara, Toshihiko Saitoh, Jose Rodriguez
USPTO Applicaton #: 20070199325 - Class: 060740000 (USPTO)

Related Patent Categories: Power Plants, Combustion Products Used As Motive Fluid, Combustion Products Generator, Having Fuel Supply System, With Fuel Injector
The Patent Description & Claims data below is from USPTO Patent Application 20070199325.
Brief Patent Description - Full Patent Description - Patent Application Claims  monitor keywords

BACKGROUND OF THE INVENTION

[0001] 1. Field of the Invention

[0002] The present invention relates to a gas turbine combustor, and especially, relates to a combustor which is so constructed as to reduce drift and disturbance of airflow flowing through the interior thereof.

[0003] 2. Description of the Prior Art

[0004] A cross-sectional view of FIG. 11 shows a general construction of a gas turbine. As shown in FIG. 11, a gas turbine comprises a compressor 1 compressing the air; combustors 2 being supplied with the air compressed by the compressor 1 and fuels so as to perform combustion; and a turbine 3 being rotary driven by combustion gas from the combustors 2. The compressor 1, the combustors 2 and the turbine 3 are covered by casings 4, respectively. In addition, a plurality of the combustors 2, sixteen pieces for example, are arranged on the outer circumference of a rotor 5 serving as one shaft sharing the compressor 1 and the turbine 3, being equally spaced.

[0005] In a gas turbine as described hereinabove, the air compressed by the compressor 1 is supplied to the combustors 2 and the rotor 5 through the interior of the casing 4. Then, the compressed air being supplied to the combustors 2 are used for combustion of fuels being supplied to the combustors 2. In addition, the compressed air being supplied to the interior of the casing 4 and the rotor 5 of the turbine 3 is used for cooling stationary vanes 31 fixed to the casing 4 and rotating blades 32 fixed to the rotor 5 both of which are exposed to high temperature due to combustion gas.

[0006] A combustor 2 being provided to such a gas turbine as constructed hereinabove comprises a combustor basket 2a being provided to the fuel-supply side; a transition piece 2b being connected to the combustor basket 2a and injecting combustion gas to the stationary vanes 31 in a first row of the turbine 3; and an external cylinder 2c being inserted so as to be along the inner wall of the casing 4 and covering the combustion basket 2a. Moreover, FIG. 12 shows an enlarged cross-sectional view depicting the vicinity of the combustor 2 in order to describe a detailed construction of the vicinity of the combustor 2.

[0007] As shown in FIG. 12, the combustor 2 has a combustor basket 2a comprise a pilot nozzle 21 being provided to the center thereof and performing diffusion combustion; a plurality of main nozzles 22 being provided to the outer circumference of the pilot nozzle 21, equally spaced, and performing premixed combustion; a pilot cone 23 being provided so as to cover the downstream-side tip of the pilot nozzle 21; and main burners 24 being provided so as to cover the downstream-side tips of the main nozzles 22. In addition, the compressor 1 is provided with a compressor outlet 11 for supplying the compressed air to the interior of the casing 4 where the combustor 2 is inserted, and the compressed air discharged from the compressor outlet 11 is supplied to the interior of the combustor basket 2a.

[0008] Moreover, in order to describe the detailed construction of a combustor 2, FIG. 13 shows an enlarged cross-sectional view of a combustor basket 2a of a combustor 2. As shown in FIG. 13, a combustor 2 comprises a pilot swirl 25 being installed so as to be in contact with the outer circumference of the pilot nozzle 21 on the upstream side inside the pilot cone 23 and main swirls 26 being installed so as to be in contact with the outer circumference of the main nozzles 22 on the upstream side inside the main burners 24. As a result, the air being supplied to the pilot cone 23 is made uniform in the pilot swirl 25 and at the same time, the air being supplied to the main burners 24 is made uniform in the main swirls 26.

[0009] Additionally, the combustor 2 has a plurality of supports 27 provided to the outer circumference of the combustor basket 2a on the upstream side thereof and a rib 29 provided to support a punched metal plate 28 consisting of a perforated plate being provided to the entrance to a space between the external cylinder 2c and the combustor basket 2a on the downstream side. By having the support 27 and the rib 29 connected to the external cylinder 2c and the combustor basket 2a, the combustor basket 2a is supported and fixed to the external cylinder 2c. Furthermore, on the downstream side of the pilot nozzle 21, the main nozzles 22 are fixed by having supports 30 provided to connect the outer circumference of the pilot nozzle 21 to the main nozzles 22.

[0010] For a combustor 2 being constructed as described hereinabove, the compressed air being discharged from the compressor outlet 11 to the interior of the casing 4 flows into a space formed between the external cylinder 2c and the combustor basket 2a by way of the punched metal plate 28. The punched metal plate 28 plays a role of uniformizing the compressed air flowing into the combustor 2 by being made of a perforated plate so as to provide resistance. The compressed air flowing into the space between the external cylinder 2c and the combustor basket 2a by way of the punched metal plate 28 flows along the inner wall of the external cylinder 2c.

[0011] In consequence, by having the compressed air make 180 degrees turn at the bottom part of the external cylinder 2c (the bases of the pilot nozzle 21 and the main nozzles 22), the compressed air flows in between the supports 27 supporting the combustor basket 2a and is supplied to the interior of the combustor basket 2a. Then, finally, a swirling flow is supplied by the pilot swirl 25 and the main swirls 26 of the combustor 2 so as to be used for diffusion combustion by the pilot nozzle 21 and used for premixed combustion by the main nozzles 22.

[0012] However, as shown in FIG. 13, the relative distance from each position of inlet of the compressed air being formed between the external cylinder 2c and the combustor baskets 2a to the compressor outlet 11 differs. Therefore, the flow volume of the compressed air being supplied to the combustor 2 becomes non-uniform at each position of inlet of the compressed air being formed between the external cylinder 2c and the combustor basket 2a. In consequence, the compressed air inside the combustor basket 2 flows unstably, which leads to unstable combustion thereof. In the end, not only NOx generation rate is increased but also such issue as deterioration of durability due to generation of combustion oscillations and the like occurs.

[0013] Therefore, the present applicant proposes a combustor which restrains flow disturbance and drift of the compressed air inside the combustor basket 2a by having a flow ring being formed to have a semicircle configuration and a ring shape installed to the position so as to be connected to the supports 27 and the combustor basket 2a. (See the Japanese Patent Application Laid-Open No. 2000-346361.) In the Japanese Patent Application Laid-Open No. 2000-346361, it is disclosed that the compressor outlet 11 is provided with a flow guide which directs the flow of the compressed air being discharged from the compressor outlet 11 so as to be supplied to the interior of the combustor 2 in a uniform flow.

[0014] By installing a flow guide as described hereinabove, compressed air flow is formed so as to be directed toward the combustor being installed outside the compressor outlet 11, thereby providing the flow volume of the compressed air being supplied to the combustor 2 with uniformity. However, because a passageway between each position of the compressed air inlets being formed between the external cylinder 2c and the combustor basket 2a and the compressor outlet 11 is different from each other, the easiness of the compressed air flow differs, depending on the passageway. As a result, the compressed air flow being supplied to the inside of the combustor basket 2a is made to be a non-uniform flow. In addition, because the flow along the inside wall of the casing 4 being more outside of the combustor 2 dominates mostly, non-uniformity thereof is increased.

SUMMARY OF THE INVENTION

[0015] It is an object of the present invention to provide a combustor which supplies the air to the inside thereof so as to flow in a uniform manner.

[0016] A combustor in accordance with the present invention comprises:

[0017] a pilot nozzle being provided to the center of axis of the combustor and performing diffusion combustion:

[0018] main nozzles being provided circumferentially, equally spaced, on the side of the outside-circumference of the pilot nozzle and performing premixed combustion;

[0019] a combustor basket covering the sides of the outside circumferences of the pilot nozzle and the main nozzles;

[0020] an external cylinder being provided to the side of the outside circumference of the combustor basket and serving as a passageway of compressed air between inside wall thereof and outside wall of the combustor basket; and

[0021] a cylinder-type sleeve being provided with a side surface in a tapered shape which is connected to the end serving as the inlet side of the compressed air of the external cylinder;

[0022] wherein the length of the side surface of the sleeve changes in a manner that the longer the distance to the compressed air outlet discharging the compressed air is, the longer the length of the side surface of the sleeve is, while the shorter the distance to the compressed air outlet discharging the compressed air is, the shorter the length of the side surface of the sleeve is.

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